The efficient implementation of functional biomolecules into hybrid devices is a central topic in current material science research, and redox metalloproteins often emerged as promising candidates. In particular, the blue copper protein Azurin (AZ) is highly suitable for future integrations in bio-optoelectronic nanodevices and biosensors, since it is characterized by a very fast and efficient intramolecular electron transfer, and it shows a marked structural robustness once adsorbed on surfaces; this allowing the preservation of its physiological functions. In addition, AZ bears an exposed disulphide group, suitable for covalent anchoring on gold, allowing thus a controlled orientation of the protein and a good electrical coupling with the...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
A key challenge of the current research in nanoelectronics is the realization of biomolecular device...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
A key challenge of the current research in nanoelectronics is the realization of biomolecular device...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The efficient implementation of functional biomolecules into hybrid devices is a central topic in cu...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
The copper protein azurin, due to the peculiar coupling of its optical and vibronic properties with ...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
Blue copper redox protein azurin (AZ) constitutes an ideal active element for building bionano-optoe...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
A model system for the electrochemical investigation of vectorial electron transfer in biological sy...
A key challenge of the current research in nanoelectronics is the realization of biomolecular device...